首页> 外文会议>Conference on Advances in Geotechnical Engineering >Geological evidence for widespread faulting and fracturing of clay-rich sediments during initial consolidation
【24h】

Geological evidence for widespread faulting and fracturing of clay-rich sediments during initial consolidation

机译:在初始合并期间富含粘土沉积物的富含沉积物的地质证据

获取原文

摘要

In the past decade, geophysical and geological evidence from many basins with thick successions of smectite-rich clays shows that this type of marine clay is intensely fractured and faulted during very early stages in its burial and consolidation history. In particular, 3D seismic data (spatial resolution of 12.5m) show that these fault patterns are polygonal in geometry, and this pattern cannot be explained by normal processes of tectonic faulting. It is argued that these polygonal fault systems are an intrinsic deformational response to fully three-dimensional consolidation and that they form during the earliest stages of pore fluid expulsion and void ratio reduction. They consist exclusively of small (metre-scale displacements) extensional faults. They are globally widespread, occurring in over 100 basins worldwide, in some cases covering areas in excess of 10~6 km~2. This large areal extent of the deformation is perhaps its most dramatic property: as an example, the offshore equivalent of the Eocene London Clay is pervasively deformed by faults spaced at 100's of metres over the entire southern and central North Sea Basin. The recognition of this new class of early deformational system has profound implications for engineering activities centred on smectitic clay soils, and poses some fundamental questions for the relationship between consolidation, stress history and strength.
机译:在过去十年中,来自许多富含富岩粘土的许多盆地的地球物理和地质证据表明,这种类型的海洋粘土在其埋葬和整合历史上非常早期阶段密切断裂和断层。特别地,3D地震数据(25米的空间分辨率)表明这些故障模式是几何形状的多边形,并且该模式不能通过构造断层的正常过程解释。认为这些多边形故障系统是对完全三维固结的固有变形响应,并且它们在孔隙流体排出的最早阶段和空隙率降低期间形成。它们仅由小(米级位移)扩展故障组成。它们在全球范围内普遍存在,在全球100多个盆地中发生,在某些情况下覆盖超过10〜6公里〜2的区域。这种变形的大量面积可能是最戏剧性的财产:作为一个例子,亨肾克莱的海上等同物在整个南海和中央南海盆地100米的米中越来越多地变形。对这类新的早期变形系统的认识具有深远的对宫粘土土壤的工程活动的影响,对整套,压力历史和力量之间的关系带来了一些基本问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号